Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump

Introduce analytical acceleration formulas that are derived from the classic d'Alembert principle of theoretical mechanics for high-speed sections and sections of retarder positions; show the possibility of determining the instantaneous car speeds in each section of the marshalling hump accordi...

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Main Authors: Saidivaliev Shukhrat, Bozorov Ramazon, Shermatov Elbek
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_05008.pdf
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spelling doaj-ea5878dbb1544ca48b3ec03e643e2d6b2021-06-11T07:16:51ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012640500810.1051/e3sconf/202126405008e3sconf_conmechydro2021_05008Kinematic characteristics of the car movement from the top to the calculation point of the marshalling humpSaidivaliev ShukhratBozorov RamazonShermatov ElbekIntroduce analytical acceleration formulas that are derived from the classic d'Alembert principle of theoretical mechanics for high-speed sections and sections of retarder positions; show the possibility of determining the instantaneous car speeds in each section of the marshalling hump according to the formulas of elementary physics both for high-speed sections and for sections of retarder positions; provide formulas for determining the time of movement of a car with uniformly accelerated and/or uniformly retarded motion of the car on the inclined part of the hump, as well as in areas of retarder positions. Research methods: The classic d'Alembert principle of theoretical mechanics is widely used in the paper. Main results: For the first time, the results of constructing a graphical dependence of the estimated height of the marshalling hump over the entire length of its profile are presented in the form of a decrease in the profile height of each section of the inclined part in proportion to the slope of the track. The results of constructing graphical dependences on changes in the speed and time of movement of a car along the entire length of the inclined part of the marshalling hump are fundamentally different from the existing methodology, where, for example, curves of medium (rather than instantaneous) speeds of a car are built. The proposed new methodology for calculating the kinematic characteristics of the car movement along the entire length of the hump allows an analysis of the mode of shunting car at the marshalling humps.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_05008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Saidivaliev Shukhrat
Bozorov Ramazon
Shermatov Elbek
spellingShingle Saidivaliev Shukhrat
Bozorov Ramazon
Shermatov Elbek
Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
E3S Web of Conferences
author_facet Saidivaliev Shukhrat
Bozorov Ramazon
Shermatov Elbek
author_sort Saidivaliev Shukhrat
title Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
title_short Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
title_full Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
title_fullStr Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
title_full_unstemmed Kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
title_sort kinematic characteristics of the car movement from the top to the calculation point of the marshalling hump
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Introduce analytical acceleration formulas that are derived from the classic d'Alembert principle of theoretical mechanics for high-speed sections and sections of retarder positions; show the possibility of determining the instantaneous car speeds in each section of the marshalling hump according to the formulas of elementary physics both for high-speed sections and for sections of retarder positions; provide formulas for determining the time of movement of a car with uniformly accelerated and/or uniformly retarded motion of the car on the inclined part of the hump, as well as in areas of retarder positions. Research methods: The classic d'Alembert principle of theoretical mechanics is widely used in the paper. Main results: For the first time, the results of constructing a graphical dependence of the estimated height of the marshalling hump over the entire length of its profile are presented in the form of a decrease in the profile height of each section of the inclined part in proportion to the slope of the track. The results of constructing graphical dependences on changes in the speed and time of movement of a car along the entire length of the inclined part of the marshalling hump are fundamentally different from the existing methodology, where, for example, curves of medium (rather than instantaneous) speeds of a car are built. The proposed new methodology for calculating the kinematic characteristics of the car movement along the entire length of the hump allows an analysis of the mode of shunting car at the marshalling humps.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_05008.pdf
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AT shermatovelbek kinematiccharacteristicsofthecarmovementfromthetoptothecalculationpointofthemarshallinghump
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